孕液池泄漏电计控制的物理建模

A. S. Kalganov, V. Olenchenko
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引用次数: 0

摘要

寻找各种水工建筑物的泄漏是电测量学的一个热门任务。妊娠液池是电测控制的对象之一。它们积累富金溶液。通过测量感应极化的电阻率层析成像方法可以识别池塘防水层中的缺口。进行了物理模拟,以确定由缺口引起的电异常的性质。一个小塑料水箱模拟了一个溶液池。在小油箱的底部打了一个孔,它提供了与大油箱的液压连接。测量采用Skla-64仪器,二维数据反演采用Res2DInv程序。结果发现,漏电位置是由一个低电阻率异常和一个强归一化电荷异常分配的。然而,二维电阻率模型由于反演伪影而变得复杂。标准化的可充电性异常是局部的,准确地标记了罐底泄漏的位置。提出了利用电阻率和归一化电荷率的复杂分析方法对妊娠池和其他水工建筑物的泄漏进行电测监测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Physical modeling of electrometric control of leaks from the pregnant solution pond
The search for leaks from various hydraulic structures is a topical task of electrometry. Pregnant solution pond is one of the objects of electrometric control. They accumulate gold-enriched solutions. Identification of a breach in the waterproofing layer of a pond is possible by the method of electrical resistivity tomography with the measurement of induced polarization. Physical simulations were carried out to determine the nature of the electrical anomalies caused by the breach. A small plastic water tank imitated a solution pond. A hole was made in the bottom of the small tank, it provided a hydraulic connection with the large tank. The measurements were performed with the Skla-64 equipment, and the two-dimensional data inversion was carried out using the Res2DInv program. As a result, it was found that the place of leakage is allocated by an anomaly of low electrical resistivity and an intense anomaly of normalized chargeability. However, the 2D electrical resistivity model is complicated by inversion artifacts. The normalized chargeability anomaly is local and accurately marks the location of the leak in the bottom of the tank. It is proposed to use a complex analysis of electrical resistivity and normalized chargeability for electrometric monitoring of leaks from pregnant solution pond and other hydraulic structures.
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